Signaling techniques using solitons

A. Singer
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引用次数: 3

Abstract

Solitons and the nonlinear evolution equations that support them arise in the description of a wide range of nonlinear physical phenomena including shallow water waves, piezoelectrics, and optical transmission in nonlinear fibers. Although such systems are nonlinear, they are exactly solvable and possess a class of remarkably robust solutions, known as solitons, which satisfy a nonlinear form of superposition. By exploiting the properties of solitons, such nonlinear systems may be attractive for a variety of signal processing problems including multiple access communications, private or low power transmission, and multiresolution transmission. We outline a number of modulation techniques using solitons, and explore some of the properties of such systems in the presence of additive channel corruption. We also discuss the use of a nonlinear LC network (transmission line model) and its soliton solutions for signal synthesis in a variety of modulation techniques.
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使用孤子的信号技术
孤子和支持它们的非线性演化方程出现在各种非线性物理现象的描述中,包括浅水波浪、压电和非线性光纤中的光传输。虽然这样的系统是非线性的,但它们是精确可解的,并且具有一类非常鲁棒的解,称为孤子,它满足非线性叠加形式。通过利用孤子的特性,这种非线性系统可能对各种信号处理问题有吸引力,包括多址通信,私有或低功率传输,以及多分辨率传输。我们概述了一些使用孤子的调制技术,并探讨了这些系统在加性信道损坏存在下的一些特性。我们还讨论了在各种调制技术中使用非线性LC网络(传输线模型)及其孤子解进行信号合成。
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